[0001] The present invention relates to a crop transfer device according to the preamble
of claim 1.
[0002] In the prior art it is known to convey crop, in particular crop from a root heap
to a truck, using a transfer loader such as the Holmer Terra Felis 2. The transfer
loader comprises a conveyor conveying the root crop into the receptacle of the truck.
It is known to move the conveyor with respect to the receptacle manually in order
to fill the receptacle uniformly.
[0003] The invention seeks to facilitate the loading operation for the operator and this
with economical means.
[0004] The objective of the invention is achieved by a crop transfer device comprising the
features of claim 1.
[0005] Preferred embodiments of the crop transfer device are indicated in the dependent
claims 2 to 9.
[0006] The invention also refers to a method of transferring crop into a receptacle according
to claim 10.
[0007] The invention will be better understood in light of the following description, given
only as an example and referring to the figures, which show.
Figure 1 a schematic plane view of a crop transfer device according to the invention
transferring crop to a transport vehicle,
Figure 2 a perspective view of a portion of a conveyor for transferring the crop of
the transfer loader of figure 1.
Figure 3 is a plan view of the portion of the conveyor transfer device of figure 2.
Figure 4 is an enlarged view of the end portion of the conveyor; and
Figure 5 is a front view of a portion of the crop transfer device.
[0008] Figure 1 shows the situation of a crop transfer device according to the invention
transferring root crop to a receptacle.
[0009] Crop 2 is arranged on a crop heap, for example at the lateral side of a field. The
crop heap comprises for example root crop, such as sugar beets. A crop transfer device
4 is shown as well as a vehicle for transporting the crop. The vehicle comprises a
receptacle 6 for the crop, such as a container. The vehicle may be a truck.
[0010] The crop transfer device 4 is adapted for transferring the crop 2 of the crop heap
to the receptacle 6 and comprises a conveyor 8 for transferring the crop. As can be
seen on figure 2, the conveyor 8 defines a conveyor plane CP which is coplanar with
the upper side of a conveyor belt 9. The conveyor plane CP is during use generally
horizontal and parallel to the drawing plane of figure 3.
[0011] The conveyor 8 has a conveyor outlet 10 defining an outlet direction OD which is
the direction of the crop 2 falling from the conveyor 8 at the conveyor outlet. The
outlet direction OD is generally directed to the bottom of figure 2 and into the drawing
plane figure 3.
[0012] The crop transfer device 4 comprises a scanning device 12 adapted to scan the surface
of crop situated below the conveyor outlet 10 and/or the surface of the receptacle
6. The crop transfer device 4 comprises a mounting device 14 by which the scanning
device 12 is mounted to the conveyor 8. The mounting device 14 maintains the scanning
device 12 with respect to the conveyor 8 with a translational mobility of the scanning
device 12 with respect to the conveyor along a path 20 (see figure 4). The mounting
device 14 comprises a mounting arm 22 rotationally linked to the conveyor 8 around
a mounting axis of rotation X-X and the scanning device 12 is attached to the mounting
arm 22 at a distance to the mounting axis of rotation X-X. The path 20 has therefore
an arc shape and in particular a circular arc shape. The path 20 extends at least
over a region of 90° around the mounting axis of rotation X-X and preferably over
at least 120° or 180° around the axis X-X.
[0013] The scanning device 12 is arranged above the conveyor plane CP with respect to the
outlet direction, the mounting arm 22 does therefore not hinder the chute of the crop
2 from the conveyor outlet 10.
[0014] The conveyor outlet 10 comprises an outlet wall 24. The outlet wall 24 defines a
channel guiding the crop 2 downwards. The outlet wall 24 extends preferably perpendicular
to the conveyor plane CP and comprises a front wall and two lateral walls. The front
and lateral walls are preferably perpendicular to the conveyor plane CP. The outlet
wall 24 defines also an outside OS which is a side of the outlet wall opposite the
conveyor outlet.
[0015] The path 20 of the scanning device is situated outside of the outlet wall 24. Preferably
the path 22 is situated completely on the outside of the outlet wall 24. In other
terms, the scanning device 12 in each position along the path 20 has a projection
onto the conveyor plane CP that is located completely outside the projection of the
outlet wall 24 on the conveyor plane. In this manner, the crop 2 falling onto the
crop already in the receptacle do not enter the scan area. Also, the wall 24 does
not generate scan artifacts.
[0016] The scanning device 12 comprises a scan head 28 adapted to scan in a scan plane SP.
The scan plane SP extends perpendicularly to the conveyor plane CP and extends in
particular exclusively perpendicular to the conveyor plane CP. In other words, the
scan plane SP is fixed with respect to the mounting arm 22 and cannot be adjusted.
The scan plane SP also extends parallel to the axis of rotation X-X in each of the
positions of the scanning device along the path 20. The scan head 28 scans preferably
exclusively in the scan plane SP. This means that the scan head 28 is fixed with respect
to the mounting arm 22. In particular, the scan head 28 comprises a 2D-laser scanner.
The scan head 28 is a rotating scan head having a rotational mobility around a scan
axis A-A. The scan axis A-A is perpendicular to the conveyor plane CP.
[0017] The mounting device 14 comprises also drive means 30 for driving the scanning device
12 along the path 20.
[0018] The drive device comprises a linkage 32 translating a unidirectional rotary motion
of around more than 360° into an oscillating translation of the scanning device 20
along the path. The linkage 32 comprises a driven gear 34 and a driving gear 36 as
well as two levers 38 and 40 linked through a bar 42.
[0019] The transfer device 4 comprises also control means 50 adapted to generate a three
dimensional model of the crop heap surface in the receptacle and/or the receptacle
based on the information generated by the scanning device 12. The control means 50
is also adapted to control the drive device 30 in order to drive the scanning device
12 along the path 20.
[0020] The crop transfer device is used in the following manner.
[0021] Crop is conveyed via the conveyor 8 and the crop is discharged through the conveyor
outlet 10. The surface of a heap in the receptacle created by the discharged crop
and or the receptacle is scanned by the scanning device 12. The conveyor 8 is moved
with respect to the receptacle as a function of the information generated by the scanning
device 12. In particular the control means 50 controls a displacement of the conveyor
based on the information generated by the scanning device.
1. Crop transfer device (4) for transferring crop, in particular root crop, to a receptacle,
the device comprising
a conveyor (8) for transferring the crop, the conveyor defining a conveyor plane (CP),
the conveyor having a conveyor outlet (10) defining an outlet direction (OD) which
is the direction of the crop falling from the conveyor at the conveyor outlet,
characterized in that
the crop transfer device (4) comprises a scanning device (12) adapted to scan the
surface of crop situated below the conveyor outlet, in that
the crop transfer device (4) comprises a mounting device (14) by which the scanning
device is mounted to the conveyor (8) with a translational mobility of the scanning
device with respect to the conveyor along a path (20).
2. Crop transfer device according to claim 1, wherein the mounting device comprises a
mounting arm (22) rotationally linked to the conveyor around a mounting axis of rotation
(x - x) and wherein the scanning device is attached to the mounting arm at a distance
to the mounting axis of rotation, in particular so that the path has an arc shape.
3. Crop transfer device according to claim 1 or 2, wherein the scanning device is arranged
above the conveyor plane with respect to the outlet direction.
4. Crop transfer device according to any one of the preceding claims, wherein the conveyor
(8) comprises an outlet wall (24) (extending perpendicular to the conveyor plane)
and wherein the path (20) of the scanning device is situated outside of the outlet
wall, which is a side of the wall opposite the conveyor outlet, in particular the
path being situated completely on the outside of the outlet wall.
5. Crop transfer device according to any one of the preceding claims, wherein the scanning
device comprises a scan head (28) adapted to scan in a scan plane (SP), in particular
wherein the scan head comprises a 2D-Laserscanner.
6. Crop transfer device according to claim 5, wherein the scan head is a rotational scan
head having a rotational mobility around a scan axis (A - A).
7. Crop transfer device according to any one of the preceding claims, wherein the mounting
device comprises drive means (30) for driving the scanning device along the path.
8. Crop transfer device at least according to claims 2 and 7 taken together, wherein
the drive device (30) comprises a linkage translating a unidirectional rotary motion
of around more than 360° into an oscillating translation of the scanning device along
the path.
9. Crop transfer device according to any one of the preceding claims, wherein the crop
transfer device comprises control means (50) adapted to generate a three-dimensional
model of the crop heap surface and/or the receptacle based on the information generated
by the scanning device.
10. Method of transferring crop into a receptacle using a crop transfer device according
to any one of the preceding claims, comprising the steps of
- conveying crop via the conveyor (8),
- discharging the conveyed crop through the conveyor outlet (10),
- scanning the surface of a heap in the receptacle created by the discharged crop
and/or the receptacle by the scanning device,
- moving the conveyor with respect to the receptacle as a function of the information
generated by the scanning device.